The growth of iron-containing nanostructures in the process of focused electron beam-induced deposition (FEBID) of Fe(CO)$_5$ is studied by means of atomistic irradiation-driven molecular dynamics (IDMD) simulations. The geometrical characteristics (lateral size, height and volume), morphology and metal content of the grown nanostructures are analyzed at different irradiation and precursor replenishment conditions corresponding to the electron-limited and precursor-limited regimes (ELR & PLR) of FEBID. A significant variation of the deposit's morphology and elemental composition is observed with increasing the electron current from 1 to 4 nA. At low beam current (1 nA) corresponding to the ELR and a low degree of Fe(CO)$_5$ fragmentation, t...
Focused electron beam induced deposition (FEBID) is an emerging method to fabricate nanostructures w...
The adoption of nanotechnology is increasingly important in many aspects of our daily life influenci...
The adoption of nanotechnology is increasingly important in many aspects of our daily life influenci...
Irradiation-driven fragmentation and chemical transformations of molecular systems play a key role i...
This paper presents a detailed computational protocol for the atomistic simulation of formation and ...
The role of thermal effects in the focused electron beam induced deposition (FEBID) process of Me$_2...
Abstract: The present paper intends to be a new study of a widely used precursor in nanostructure de...
The present paper intends to be a new study of a widely used precursor in nanostructure deposition a...
The present paper intends to be a new study of a widely used precursor in nanostructure deposition a...
We use molecular dynamics simulation to study iron Nanoparticles (NPs) consisting of 4000, 5000, and...
Focused electron beam induced deposition (FEBID) is a single-step, direct-write nanofabrication tech...
We review the current status of the use of focused electron beam induced deposition (FEBID) for the ...
The rapid and precise direct-write growth of nanoscale features by electron-beaminduced deposition (...
Focused electron beam induced deposition (FEBID) is a powerful technique for 3D-printing of complex ...
The adoption of nanotechnology is increasingly important in many aspects of our daily life influenci...
Focused electron beam induced deposition (FEBID) is an emerging method to fabricate nanostructures w...
The adoption of nanotechnology is increasingly important in many aspects of our daily life influenci...
The adoption of nanotechnology is increasingly important in many aspects of our daily life influenci...
Irradiation-driven fragmentation and chemical transformations of molecular systems play a key role i...
This paper presents a detailed computational protocol for the atomistic simulation of formation and ...
The role of thermal effects in the focused electron beam induced deposition (FEBID) process of Me$_2...
Abstract: The present paper intends to be a new study of a widely used precursor in nanostructure de...
The present paper intends to be a new study of a widely used precursor in nanostructure deposition a...
The present paper intends to be a new study of a widely used precursor in nanostructure deposition a...
We use molecular dynamics simulation to study iron Nanoparticles (NPs) consisting of 4000, 5000, and...
Focused electron beam induced deposition (FEBID) is a single-step, direct-write nanofabrication tech...
We review the current status of the use of focused electron beam induced deposition (FEBID) for the ...
The rapid and precise direct-write growth of nanoscale features by electron-beaminduced deposition (...
Focused electron beam induced deposition (FEBID) is a powerful technique for 3D-printing of complex ...
The adoption of nanotechnology is increasingly important in many aspects of our daily life influenci...
Focused electron beam induced deposition (FEBID) is an emerging method to fabricate nanostructures w...
The adoption of nanotechnology is increasingly important in many aspects of our daily life influenci...
The adoption of nanotechnology is increasingly important in many aspects of our daily life influenci...